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Biomedical subjects

J Fassler

Publications and source records attributed to J Fassler.

8 recordsLinked to original sources

Modulation of IL-1-induced chemokine expression in human mesangial cells through alterations in redox status.

The effects of altering intracellular redox potential on interleukin 1 (IL-1)-induced MCP-1 gene expression by human mesangial cells were examined. Thiol containing antioxidants significantly increased cellular glutathione content while decreasing glutathione disulfide levels. These antioxidants inhibited IL-1 induction of MCP-1 mRNA expression. This correlated with a decrease in DNA binding activity of NF-kappa B, a transcription factor thought to be necessary for MCP-1 gene expression. Incubation of mesangial cells with the oxidizing agents diamide or hydrogen peroxide did not upregulate MCP-1 gene expression, and prevented IL-1 induction of MCP-1 mRNA. Oxidants appeared to inhibit the degradation of I kappa B, and the translocation of NF-kappa B to the nucleus. Non-oxidative depletion of intracellular glutathione also attenuated the effects of IL-1 on MCP-1 expression. These data indicate that the intracellular redox potential is a critical determinant of cell activation by IL-1. The observation that both oxidizing and reducing environments are inhibitory suggests that redox changes can affect the IL-1 signal transduction pathway at multiple points.

Antioxidants↗

"Sunbath polyneuritis": subacute axonal neuropathy in perazine-treated patients after intense sun exposure.

This article aims at drawing attention to the peculiar association of intense exposure to sunlight and subacute development of sensory neuropathy which was seen in 7 psychiatric patients treated with the phenothiazine derivative, perazine. Three patients additionally developed bilateral VII nerve palsy. Symptoms followed a monophasic course with almost complete remission. Routine neurophysiology suggested axonal neuropathy confirmed by sural nerve biopsy in 1 patient. A toxic origin of neuropathy is supposed, possibly induced by phenothiazine photoproducts, which may cause cell damage via lipid peroxidation.

Adult↗

The yeast spt14 gene is homologous to the human PIG-A gene and is required for GPI anchor synthesis.

The protein encoded by the yeast gene SPT14 shows high sequence similarity to the human protein, PIG-A, whose loss of activity is at the origin of the disease paroxysmal nocturnal hemoglobinuria. The symptoms of this disease are apparently due to a loss of cell surface, glycosylphosphatidylinositol (GPI)-anchored proteins. Like PIG-A mutant cells, spt14 mutant cells are defective in GPI anchoring due to a defect in the synthesis of GlcNAc-PI, the first step of GPI synthesis. The spt14 mutant causes several other abnormalities including transcriptional defects and a downregulation of inositolphosphoceramide synthesis. We suggest that these defects are indirect results of the loss of GPI anchoring.

Acetylglucosamine↗

Somatostatin analogues inhibit angiogenesis in the chick chorioallantoic membrane.

The mechanism responsible for alterations in tumor growth following administration of somatostatin analogues is unknown. Somatostatin analogues, SMS 201-995 and RC-160, have demonstrated the potential to inhibit both tumor growth and vascularity, in vivo and in vitro. We hypothesized that SMS and RC-160 inhibit angiogenesis and this inhibition may alter tumor growth. To test this hypothesis, 2 mm methylcellulose disks containing concentrations of SMS 201-995 and RC-160 at 0, 0.5, 2.5, or 50 micrograms per disk, were implanted on the chorioallantoic membrane (CAM) of 6- to 7-day-old shell-less chick embryos. Inhibition of blood vessel growth in the region of the disk was visually assessed 24-36 hr following disk implantation and graded (0-4) based on the radius of the zone of inhibition from the center of the disk. The overall incidence of inhibition for the somatostatin analogues at concentrations of 0.5, 2.5, and 50 micrograms per disk was 13, 56, and 61% for SMS and 27, 49, and 68% for RC-160, respectively. Overall incidence of inhibition for the positive (inhibitory) control was 70.5% and those for buffer (negative) controls were 3-14%. Somatostatin analogues were associated in a dose-related fashion with both a greater percentage of inhibition of blood vessel growth and an increased grade of inhibition. Inhibition of angiogenesis may be a mechanism responsible for the tumor regression observed in vivo following SMS or RC-160 therapy.

Allantois↗

Light regulation of plant gene expression by an upstream enhancer-like element.

Light regulates many varied physiological and developmental phenomena during plant growth and differentiation, including the formation of a photosynthetically competent chloroplast from a proplastid. The expression of ribulose 1,5-bisphosphate carboxylase small subunit (rbcS) genes is regulated by light in a development- and tissue-specific manner2,3. In some plant species, phytochrome has been demonstrated to mediate this response, and photoregulation of rbcS expression occurs at least in part at the level of transcription. We have shown previously that a 5'-noncoding fragment (4-973 base pairs (bp) upstream of the messenger RNA cap site) of the pea rbcS ss3.6 gene contains all of the nucleotide sequence information necessary to direct the photoregulated expression of a bacterial chloramphenicol acetyltransferase (cat) gene in tobacco. Consistent with these findings, Morelli et al.11 have shown by deletion analysis of a second rbcS gene promoter, that the sequences required for photoregulated expression of rbcS E9 reside within the 5'-noncoding region. They identified an upstream region of approximately 700 bp needed for maximum transcription but not light-dark regulation, and a region from -35 to -2 bp which included the TATA box and contained the necessary information for light responsiveness. We now demonstrate that regulatory sequences 5' distal to the rbcS ss3.6 TATA box and transcriptional start site not only contain the information necessary for maximum expression, but also confer photoregulation. These upstream regulatory sequences function independently of orientation when fused to their homologous promoter or a heterologous promoter.

Acetyltransferases↗